Bashford J D
School of Mathematics and Physics, University of Tasmania, Hobart 7001, Tasmania, Australia.
J Biol Phys. 2006 Jan;32(1):27-47. doi: 10.1007/s10867-006-2719-1.
We investigate the sequence-dependent behaviour of localised excitations in a toy, nonlinear model of DNA base-pair opening originally proposed by Salerno. Specifically we ask whether "breather" solitons could play a role in the facilitated location of promoters by RNA polymerase (RNAP). In an effective potential formalism, we find excellent correlation between potential minima and Escherichia coli promoter recognition sites in the T7 bacteriophage genome. Evidence for a similar relationship between phage promoters and downstream coding regions is found and alternative reasons for links between AT richness and transcriptionally-significant sites are discussed. Consideration of the soliton energy of translocation provides a novel dynamical picture of sliding: steep potential gradients correspond to deterministic motion, while "flat" regions, corresponding to homogeneous AT or GC content, are governed by random, thermal motion. Finally we demonstrate an interesting equivalence between planar, breather solitons and the helical motion of a sliding protein "particle" about a bent DNA axis.
我们研究了最初由萨勒诺提出的一个简单的DNA碱基对打开的非线性模型中局域激发的序列依赖性行为。具体而言,我们探讨了“呼吸子”孤子是否能在RNA聚合酶(RNAP)促进启动子定位过程中发挥作用。在一种有效势形式体系中,我们发现T7噬菌体基因组中势极小值与大肠杆菌启动子识别位点之间存在极好的相关性。我们发现了噬菌体启动子与下游编码区之间存在类似关系的证据,并讨论了富含AT区域与转录显著位点之间联系的其他原因。对孤子易位能量的考量提供了一种新颖的滑动动力学图景:陡峭的势梯度对应确定性运动,而对应均匀AT或GC含量的“平坦”区域则由随机热运动主导。最后,我们证明了平面呼吸子孤子与滑动蛋白“粒子”围绕弯曲DNA轴的螺旋运动之间存在有趣的等效性。